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Automatic tool path generation for finish machining

机译:自动生成刀具路径以进行精加工

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A system for automatic tool path generation was developed at Sandia National Laboratories for finish machining operations. The system consists of a commercially available 5-axis milling machine controlled by Sandia developed software. This system was used to remove overspray on cast turbine blades. A laser-based, structured-light sensor, mounted on a tool holder, is used to collect 3D data points around the surface of the turbine blade. Using the digitized model of the blade, a tool path is generated which will drive a 0.375" CBN grinding pin around the tip of the blade. A fuzzified digital filter was developed to properly eliminate false sensor readings caused by burrs, holes and overspray. The digital filter was found to successfully generate the correct tool path for a blade with intentionally scanned holes and defects. The fuzzified filter improved the computation efficiency by a factor of 25. For application to general parts, an adaptive scanning algorithm was developed and presented with simulation results. A right pyramid and an ellipsoid were scanned successfully with the adaptive algorithm.
机译:桑迪亚国家实验室开发了一种用于自动刀具路径生成的系统,用于精加工操作。该系统由由Sandia开发的软件控制的市售5轴铣床组成。该系统用于去除铸造涡轮机叶片上的过量喷涂。安装在工具支架上的基于激光的结构化光传感器用于收集涡轮叶片表面周围的3D数据点。使用刀片的数字化模型,将生成一条刀具路径,该路径将带动0.375英寸CBN磨针绕刀片的尖端移动。开发了模糊化的数字滤波器,以正确消除由于毛刺,孔和过度喷涂引起的错误传感器读数。发现数字滤波器可以成功地为有意扫描的孔和缺陷的刀片生成正确的刀具路径,模糊化的滤波器将计算效率提高了25倍。结果:使用自适应算法成功扫描了右金字塔和椭球。

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